GAS INSULATED SWITCHGEAR
20210143618 ยท 2021-05-13
Assignee
Inventors
- Tadahiro Yoshida (Tokyo, JP)
- Naoki Tanaka (Tokyo, JP)
- Masayuki Takebe (Tokyo, JP)
- Shintaro KUROAKI (Tokyo, JP)
Cpc classification
International classification
Abstract
A hermetic portion on the side of a main body portion of a gas insulated switchgear and a hermetic portion of a bushing tank which has polymer bushings connected to the main body portion are configured separately, and electrical connection between the main body portion side and the bushing tank is carried out in an open portion. A mid tank is provided in the rear of the main body portion in which a switching apparatus is housed, and conductor portions which are horizontally led out from the main body portion are led into the mid tank, bent upward, and connected to bushings on the top of the mid tank. Cables are extended downward from the bottom of the bushing tank disposed above the mid tank via a support panel, and in the open portion, the cables are connected to the bushings.
Claims
1-9. (canceled)
10. A gas insulated switchgear, comprising: a main body portion in which a switching apparatus is housed; and a mid tank which, being provided in the rear of the main body portion, conductor portions extended out from which are led into a container having sealed therein an insulating gas, has bushings to which end portions of the conductor portions are connected, wherein cables extended out from a connection target component portion are connected to the respective bushings, and the bushings and the cables are connected together in a support component portion which is an open space, wherein the connection target component portion is a bushing tank to which external electrical power is supplied, and the bushing tank is disposed above the mid tank, and wherein the bushings are disposed on the top side of the mid tank, and the cables extend linearly upward from the bushings.
11. The gas insulated switchgear according to claim 10, wherein inside the mid tank, three of the conductor portions led out from the main body portion are connected one to each of three of the bushings provided in the mid tank.
12. The gas insulated switchgear according to claim 10, wherein the conductor portions are led out in a horizontal direction from the rear portion of the main body portion, led into the side portion of the mid tank, bent in a height direction inside the mid tank, and connected to the bushings.
13. The gas insulated switchgear according to claim 10, wherein the bushing tank has three polymer bushings protruding from the top portion of a container in which an insulating gas is sealed, and the three polymer bushings are disposed in a straight line on the top portion of the container.
14. The gas insulated switchgear according to claim 10, wherein the mid tank is provided integral with the main body portion.
15. The gas insulated switchgear according to claim 11, wherein the conductor portions are led out in a horizontal direction from the rear portion of the main body portion, led into the side portion of the mid tank, bent in a height direction inside the mid tank, and connected to the bushings.
16. The gas insulated switchgear according to claim 11, wherein the mid tank is provided integral with the main body portion.
17. The gas insulated switchgear according to claim 12, wherein the mid tank is provided integral with the main body portion.
18. The gas insulated switchgear according to claim 13, wherein the mid tank is provided integral with the main body portion.
19. The gas insulated switchgear according to claim 15, wherein the mid tank is provided integral with the main body portion.
Description
BRIEF DESCRIPTION OF DRAWINGS
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DESCRIPTION OF EMBODIMENTS
First Embodiment
[0022] A description will be given, using
[0023]
[0024] The gas insulated switchgear 100 (C-GIS), being equipment related to transmission/distribution and reception of electrical power, is of an overhead line power reception structure used as, for example, that of substation equipment, and has as a main component portion the main body portion 10 (the switching apparatus) housed in a housing 12, adopting a configuration wherein a breaker, an earthing switch, a disconnector, a lightning arrester, an electroscope, and the like are aggregated inside the board of the main body portion 10.
[0025] In
[0026] Then, in the structure of connection of these components, between the main body portion 10 and the mid tank 7, conductor portions 6 led out in a horizontal direction from the main body portion 10 to the depth side are connected to conductor portions 6 (connecting conductors) in the mid tank 7 via a three-phase spacer 9 (a spacer), and in the mid tank 7, the direction of extension of the conductor portions 6 is changed from the depth direction to another direction, for example, upward in a vertical direction, an up-down direction, or a height direction.
[0027] The mid tank 7 is of a configuration wherein bushings 22, the connecting portions of which are exposed, are provided on the top of a container 7a in which an insulating gas is sealed, and wherein the end portions of the conductor portions 6 are bent toward and connected to the bushings 22 in the mid tank 7. In the example of
[0028] Also, the number of the conductor portions 6 led out from the main body portion 10 is three, and the three conductor portions 6 are connected one to each of three bushings 22 which are provided, exposed to the surface of the container 7a of the mid tank 7, in the container 7a of the mid tank 7. Here, in order to realize the disposition of three polymer bushings 11 in
[0029] Furthermore, a total of three cables 3 connected one to each of the three bushings 22 are configured to extend linearly upward from the bushings 22 and to be connected to the bottom portion of a container 1a of the bushing tank 1 which is a connection target.
[0030] The bushing tank 1 is configured to be provided with the container 1a in which an insulating gas is sealed, the three polymer bushings 11 protruding upward from the top portion of the container 1a, and bushings 21 which are provided exposed to the bottom side of the container 1a and to which the upper end portions of the cables 3 are connected, and the bushing tank 1 is supported above the mid tank 7 via a support panel 5 (a spacer or a support component portion). As shown in
[0031] In the support panel 5, the cables 3 configure linear lead portions which extend in the up-down direction so as to connect between the bushings 21 and 22 disposed in the up-down direction, and as illustrated in
[0032] In this way, in the rear of the main body portion 10, a configuration is such that the mid tank 7, the cables 3 supported by the support panel 5, and the bushing tank 1 are stacked in sequence on a mount 8.
[0033] Also,
[0034]
[0035] As shown in
[0036] Here, as shown in
[0037] As shown in
[0038] Therefore, even when the operation of connecting and disconnecting the cables 3 to and from the bushings 22 is carried out, it is an operation in the open space, thus not involving a gas treatment.
[0039] Here,
[0040] On the contrary, in the present structure, it is only necessary to connect and disconnect the cables 3 to and from the bushings 22, and it does not happen that the hermetic portion between the bushing tank 1 and the mid tank 7 is opened when disassembling/assembling, so that it is possible to eliminate the need for a gas treatment operation occurring when installing, enabling a reduction in installation time.
[0041] In
[0042] Then, when transporting the gas insulated switchgear 100, as shown in
[0043] When disassembling the apparatus, the cables 3 are connected to the bushing tank 1 side, providing the integrated bushing side connection component portion 120 of
[0044] Next,
[0045] In the case of the configuration of
[0046] Also, as shown in
[0047] Also, it is also possible to adjust the disposition so as to align the three polymer bushings 11 in a straight line in a direction other than that of the modification examples shown in
[0048] It goes without saying that it is possible, regardless of the disposition of the polymer bushings 11, to use the main body portion side connection component portion 110 as a common component.
[0049] Here,
[0050] In the present configuration, however, as shown in
[0051] The gas insulated switchgear 100 is configured in this way, thereby avoiding the hermetic structure of a portion to be required to be disassembled in the period between shipment up to on-site installation, whereby a gas treatment accompanied by disassembling/assembling does not occur, and an operation to open a hermetic portion does not occur, so that it is possible to maintain the quality regarding the insulation property in the tank. In addition, it is possible to omit a gas treatment operation when shipping and when installing, enabling a reduction in the number of operating devices and in operating time.
[0052] Also, a configuration is such that the conductor portions 6 led out from the main body portion 10 are connected to the bushings 22 in the mid tank 7, so that the leading-out direction of the conductor portions 6 not being limited only to the horizontal direction, the bushings 22 can be disposed in any respective positions on the surface of the mid tank 7, so that the degree of freedom to set the leading-out direction of the conductor portions 6 is high, and for example, by leading out the conductor portions 6 in the height direction, the dimension in the depth direction of the apparatus can be suppressed to a small extent.
[0053] Also, it goes without saying that the bushings 22 can be disposed in any respective portions on the surface of the container 7a of the mid tank 7, and that it is possible to adopt an appropriate disposition of the bushings 22 corresponding to the characteristics of the product.
Second Embodiment
[0054] A description has been given, in the heretofore described first embodiment, of the case in which the connection target component portion of the main body portion side connection component portion 110 of the gas insulated switchgear 100 is the bushing side connection component portion 120 of the overhead line power reception configuration. The main body portion side connection component portion 110 can be used platformized as a common unit even though the connection target component portion changes in various ways.
[0055] In the second embodiment, a description will be given, using
[0056] The gas insulated switchgear 101 (C-GIS), being connected to the transformer primary unit 13 (corresponding to a transformer component portion) called an extra-high-voltage transformer primary side, for example, when installing an extra-high-voltage substation on the premises, is adopted to protect the electrical circuit against an electrical accident.
[0057]
[0058] The gas insulated switchgear 101 shown in
[0059] Here, it goes without saying that the support panel 5 can be configured integral with the cable duct 32.
[0060] In the configuration shown in
[0061] Also,
[0062] The portion between the mid tank 7 and the transformer primary unit 13 is an open portion, forming a connection structure using the cables 31.
[0063] In the present configuration, a configuration is such that the mid tank 7 is disposed between the main body portion 10 of the gas insulated switchgear 101 and the transformer primary unit 13, connecting and disconnecting the cables 31 to and from the mid tank 7, so that the gas insulated switchgear 101 can be disassembled into the main body portion side connection component portion 110 and the transformer side connection component portion 130 when transporting, enabling one-by-one transportation, and it is possible to improve transportability.
[0064] Also, the cables 31 of the transformer side connection component portion 130 can in the open portion be connected to and disconnected from the bushings 22 of the mid tank 7 of the main body portion side connection component portion 110, eliminating the need for a gas treatment operation in a disassembling/assembling operation when disassembling and installing.
[0065] As in the gas insulated switchgear 101 according to the second embodiment, in the configuration wherein the transformer primary unit 13 is connected to the main body portion 10, too, in the same way as in the overhead line power reception configuration shown in the first embodiment, the hermetic structure of a portion required to be disassembled in the period between shipment up to on-site installation is abolished, and thereby there is no more operation to open the hermetic portion, preventing the hermetic property in each tank in which an insulating gas is sealed from being deteriorated, and insulating characteristics can be kept in a good state. Also, it is possible to reduce the number of operating devices accompanied by omitting the gas treatment operation when shipping and installing, the costs of transportation of the devices, and the gas treatment operating time.
[0066] The individual component portions (the connection target component portions) used for transformer direct connection and overhead line power reception are unified to be of a cable connection type, and thereby the main body portion side connection component portion 110 can be platformized without depending on the type of the connection target component portion, and can be used as a common unit of the gas insulated switchgears 100 and 101, so that it goes without saying that it is possible to obtain the advantageous effects of a reduction in costs and an improvement in quality stability.
[0067] Although the present application is described above in terms of various exemplary embodiments and implementations, it should be understood that the various features, aspects, and functionality described in one or more of the individual embodiments are not limited in their applicability to the particular embodiment with which they are described, but instead can be applied, alone or in various combinations, to one or more of the embodiments.
[0068] It is therefore understood that numerous modifications which have not been exemplified can be devised without departing from the scope of the present application. For example, at least one of the constituent components may be modified, added, or eliminated. At least one of the constituent components mentioned in at least one of the preferred embodiments may be selected and combined with the constituent components mentioned in another preferred embodiment.
REFERENCE SIGNS LIST
[0069] 1 bushing tank, 1a, 7a container, 3, 31 cable, 4 current transformer, 5 support panel, 6 conductor portion, mid tank, 8 mount, 9 three-phase spacer, 10 main body portion, 11 polymer bushing, 12 housing, 13 transformer primary unit, 21, 22 bushing, 32 cable duct, 100, 101 gas insulated switchgear, 110 main body portion side connection component portion, 120 bushing side connection component portion, 130 transformer side connection component portion